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AUTOFRETTAGING PROCEDURES ON LDPE HYPER-COMPRESSOR COMPONENTS

机译:LDPE超压缩机组件的自动加注程序

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摘要

Hyper-compressors operating in plants with both vessel and tubular reactors are subject to very high pressures. Many cylinder components are exposed to pressures fluctuating between suction and discharge and therefore to high fatigue loads.To reach high endurance capabilities, the cylinder components have to be pre-compressed in order to keep them operating under compressive stress whenever possible. Special materials and shrink fitting procedures are usually required. In other cases or for complex shapes, other technological processes, like autofrettage, are also applied to further improve the pre-stress level.The application of autofrettage requires special rigs to withstand the severe processing conditions and an intensifier to reach final pressures up to 1.4 Gpa.Suitable sealing elements, identified through extensive experience, allow to reach very high pressures required to adequately strain the material.The pressure transmitting fluid must also have specific characteristics to avoid solidification.The autofrettage process requires special conditions to increase, maintain and remove the pressure on the system in order to achieve the desired deformation when the plastic strain region is reached.This produces an optimum autofrettage result for enhanced reliability and safe operation of the components.
机译:在具有容器反应器和管式反应器的工厂中运行的超压缩机承受很高的压力。许多气缸部件承受着在吸气和排气之间波动的压力,因此承受着较高的疲劳载荷。为了达到高的耐力能力,必须对气缸部件进行预压缩,以使其尽可能在压缩应力下运行。通常需要特殊的材料和收缩装配程序。在其他情况下或形状复杂的情况下,还可以使用其他工艺流程(例如自动玻璃钢)来进一步提高预应力水平。自动玻璃钢的应用需要专用的钻机来承受严酷的加工条件,并需要使用增压器来达到最高1.4的最终压力Gpa。通过广泛的经验确定的合适的密封元件可以达到使材料充分变形所需的极高压力。压力传递流体还必须具有避免凝固的特殊特性。自动玻璃化工艺需要特殊条件来增加,维护和移除为了达到所需的变形,当达到塑性应变区域时,可以在系统上施加压力,从而产生最佳的自动强化效果,从而提高了组件的可靠性和安全操作性。

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